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PARP-S: A secure piggybacking-based ARP for IEEE 802.11s-based Smart Grid AMI networks

机译:PARP-S:一种用于基于IEEE 802.11s的智能网格AMI网络的安全的基于piggy带的ARP

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摘要

The Smart Grid is expected to utilize a wireless infrastructure for power data collection in its Advanced Metering Infrastructure (AMI) applications. One of the options to implement such a network infrastructure is to use a wireless mesh network based on IEEE 802.11s mesh standard. However, IEEE 802.11s standard relies on MAC-based routing and thus requires the availability of MAC addresses of destinations. Due to large size of AMI networks, this creates a broadcast storm problem when such information is to be obtained via Address Resolution Protocol (ARP) broadcast packets. In this paper, we propose a mechanism to significantly alleviate such broadcast storm problem in order to improve the scalability of 802.11s and thus make it better suited for Smart Grid AMI applications. Our contribution is adapting 802.11s standard for addressing ARP broadcast storm problem in a secure and efficient manner. Specifically, we utilize the proactive Path Request (PREQ) packet and Path Reply (PREP) of layer-2 path discovery protocol of 802.11s, namely HWMP, for piggybacking ARP information. In this way, the MAC address resolution is handled during routing tree creation/maintenance and hence the broadcasting of ARP requests by the smart meters (SMs) to learn the MAC address of the data collector (i.e., the gateway/root node) is completely eliminated. Furthermore, since piggybacking the ARP via PREQ may pose vulnerabilities for possible ARP cache poisoning attacks, the data collector also authenticates the messages it sends to SMs by using Elliptic Curve Digital Signature Algorithm (ECDSA). We have extensively analyzed the behavior and overhead of the proposed mechanism using implementation of IEEE 802.11s in ns-3 simulator. The evaluations for both UDP and TCP show that compared to the original ARP broadcast operations, our approach reduces the end-to-end delay significantly without negatively impacting the packet delivery ratio and throughput.
机译:预计智能电网将利用无线基础设施在其高级计量基础设施(AMI)应用程序中收集电力数据。实现这种网络基础结构的一种选择是使用基于IEEE 802.11s网状标准的无线网状网络。但是,IEEE 802.11s标准依赖于基于MAC的路由,因此需要目标MAC地址的可用性。由于AMI网络的规模很大,当要通过地址解析协议(ARP)广播数据包获取此类信息时,就会产生广播风暴问题。在本文中,我们提出了一种机制来显着缓解此类广播风暴问题,以提高802.11s的可扩展性,从而使其更适合于智能电网AMI应用。我们的贡献是适应802.11s标准,以安全有效地解决ARP广播风暴问题。具体而言,我们利用802.11s的第2层路径发现协议(即HWMP)的主动路径请求(PREQ)数据包和路径应答(PREP)来piggy带ARP信息。通过这种方式,在路由树创建/维护过程中处理了MAC地址解析,因此,通过智能电表(SM)广播ARP请求以了解数据收集器(即网关/根节点)的MAC地址是完全的被淘汰。此外,由于通过PREQ back带ARP可能会造成可能的ARP缓存中毒攻击的漏洞,因此数据收集器还使用椭圆曲线数字签名算法(ECDSA)对发送给SM的消息进行身份验证。我们使用ns-3仿真器中的IEEE 802.11s来广泛分析所提出机制的行为和开销。对UDP和TCP的评估表明,与原始ARP广播操作相比,我们的方法可显着减少端到端延迟,而不会负面影响数据包的传输率和吞吐量。

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